Roy Samudra, Bhadra Shyamal K, Agrawal Govind P
Fiber Optics Laboratory, Central Glass and Ceramic Research Institute, Council of Scientific and Industrial Research, Kolkata, India.
Opt Lett. 2009 Jul 1;34(13):2072-4. doi: 10.1364/ol.34.002072.
Dispersive waves (DW) are generated owing to perturbation of solitons by higher-order dispersion (HOD) and nonlinearity during supercontinuum (SC) generation. The frequencies of these waves are governed by a phase-matching condition in the form of a polynomial whose coefficients depend on the numerical values of the properly normalized third- and HOD parameters. Our extensive numerical solutions show that all odd HOD terms generate a single peak on the blue or the red side of the carrier frequency, depending on the sign of the corresponding term. In contrast, positive even HOD terms create conjugate DW peaks, in both the blue and red sides. No radiation is observed for negative values of these parameters. The combination of all even and odd HOD coefficients may generate more than two DW peaks for some specific choice of parameters. The results predicted by the phase-matching condition agree well with extensive numerical simulations revealing interesting facts of SC generation.
在超连续谱(SC)产生过程中,由于高阶色散(HOD)和非线性对孤子的扰动,会产生色散波(DW)。这些波的频率由一个多项式形式的相位匹配条件决定,该多项式的系数取决于适当归一化的三阶和高阶色散参数的数值。我们广泛的数值解表明,所有奇数阶高阶色散项在载波频率的蓝色或红色一侧产生一个峰值,这取决于相应项的符号。相比之下,正偶数阶高阶色散项在蓝色和红色两侧都会产生共轭的色散波峰值。当这些参数为负值时,未观察到辐射。对于某些特定的参数选择,所有偶数阶和奇数阶高阶色散系数的组合可能会产生两个以上的色散波峰值。由相位匹配条件预测的结果与广泛的数值模拟结果吻合良好,揭示了超连续谱产生的有趣事实。